Delhanty Patric J D, Bouw Elise, Huisman Martin, Vervenne Resie M L, Themmen Axel P N, van der Lely Aart Jan, van den Akker Erica L T
Departments of Internal Medicine and Pediatric Endocrinology, Erasmus MC, Rotterdam, The Netherlands,
Mol Biol Rep. 2014 Dec;41(12):7967-72. doi: 10.1007/s11033-014-3691-7. Epub 2014 Aug 28.
The melanocortin 4 receptor (MC4R) is expressed in the hypothalamus and is essential for regulation of appetite and energy expenditure. MC4R dysfunction in humans causes hyperphagia, impaired satiety and obesity. We have identified a novel c.216C>A (N72 K) homozygous mutation in MC4R in a girl with severe obesity. The patient presented with early-onset obesity and hyperphagia indicating an effect of the homozygous mutation on her phenotype. In silico analyses indicate a damaging effect on receptor function, and the mutation is unusual in occurring in the first intra-cellular loop of the receptor. Site-directed mutagenesis was used to generate plasmid constructs expressing wild-type and mutant MC4R. These were transfected into HEK293 cells and assessed for cAMP responsiveness to α-MSH. Cells expressing N-terminal HA and C-terminal GFP-tagged MC4R were assessed by immunofluorescence confocal microscopy and flow cytometry for correct cell-surface localization. The maximal response of the mutant MC4R to α-MSH was decreased to 20 ± 1 % of the wild type receptor response, and the EC50 was increased from 16.5 ± 5.4 nM to 37.0 ± 8.3 nM. Localization of N- and C-terminally tagged MC4R by confocal microscopy and flow cytometry showed aberrant retention of the mutant receptor in the cytoplasm. Our data describe a rare homozygous inactivating mutation in the first intra-cellular loop of MC4R that markedly impairs its function and is associated with early-onset obesity and hyperphagia.
黑皮质素4受体(MC4R)在下丘脑中表达,对食欲和能量消耗的调节至关重要。人类MC4R功能障碍会导致食欲亢进、饱腹感受损和肥胖。我们在一名严重肥胖女孩中发现了MC4R基因上新的c.216C>A(N72K)纯合突变。该患者表现为早发性肥胖和食欲亢进,表明该纯合突变对其表型有影响。计算机分析表明该突变对受体功能有损害作用,且该突变发生在受体的第一个细胞内环中,较为罕见。采用定点诱变技术构建表达野生型和突变型MC4R的质粒构建体。将这些构建体转染到HEK293细胞中,并评估其对α-MSH的cAMP反应性。通过免疫荧光共聚焦显微镜和流式细胞术评估表达N端HA和C端GFP标记的MC4R的细胞,以确定其在细胞表面的正确定位。突变型MC4R对α-MSH的最大反应降至野生型受体反应的20±1%,EC50从16.5±5.4 nM增加到37.0±8.3 nM。通过共聚焦显微镜和流式细胞术对N端和C端标记的MC4R进行定位,结果显示突变型受体异常滞留于细胞质中。我们的数据描述了MC4R第一个细胞内环中一种罕见的纯合失活突变,该突变显著损害其功能,并与早发性肥胖和食欲亢进相关。